CDS

Accession Number TCMCG028C13823
gbkey CDS
Protein Id KAF6134707.1
Location join(2007261..2007300,2007802..2008444,2010972..2011101,2011208..2011262,2011841..2011954,2012213..2012306,2012389..2012455,2012921..2012980,2013062..2013677,2014160..2014521,2015127..2015347,2015470..2015551,2016166..2016227,2017055..2017606,2017739..2017967,2018099..2018230)
Organism Kingdonia uniflora
locus_tag GIB67_002108

Protein

Length 1152aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA587615, BioSample:SAMN13195877
db_source JACGCM010002827.1
Definition hypothetical protein GIB67_002108 [Kingdonia uniflora]
Locus_tag GIB67_002108

EGGNOG-MAPPER Annotation

COG_category A
Description U4 U6.U5 tri-snRNP-associated protein
KEGG_TC -
KEGG_Module M00354        [VIEW IN KEGG]
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko03041        [VIEW IN KEGG]
ko04121        [VIEW IN KEGG]
KEGG_ko ko:K11984        [VIEW IN KEGG]
EC -
KEGG_Pathway ko03040        [VIEW IN KEGG]
map03040        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGCTTCATCGTTGTTTGCTGAGATTGATTGTAATCTTTGTTTTTGCAGATTATTGGAATTTATTCCTGATGGGGAAAGACTATAGAAAGAGTAGAAGAGAAGAGGAAGATTACGTAAGTAGTAAAGACCGAGAGCGTTCGAAGATTAGTGACATTTCGAATGAGAAGGACAAAGATGATAAGGATTGGAGAATTTCTAGTAGGGATAGAAGGGAAGTACTCGAGGAGCGCGAGAAGGAGAAGAGCAAGGATAAAGTAAGGGAGAAAGATTATGATAGGTATAGAGATCGGGATCGAGAAAGGGATAGAGATCATAAGGATAGAGGAAGGGATAAAGAACGTGAGAAGGATAGAGAGGTGGAGAAAGAACATCATGACCGCGGTCGAGAGAGAAAGGAGAAAGATAGAGATAGAGAGAAGGAACGTGAAAGGCCGAAGGATCGGGAAAGAGAGAAACATAGAGATCGAGAGAGGGGGAAAGGAAAGGATAAAGACTGGGATAAATCTGAGAGATACCAGGGTAAAGGAAAGGATAGAGAGAGAGAGATGGATATTGATGATAAAGAGAGGAGTGTTAAGCCGGATCAGCGGGATAGTAGCCCTGAGGAGCACATGCAAAAAGTTGAGCATGTACCAGGTGAACCACAATTATCAACTTCAGAGATCCGGCAACGCATGCTAAAGATGAAAGAAGAAAGGTTGAAGGAAGCTTCTGAAGCTTCGGCATGGGTAAACAAGAGTAGGAAACTTGAGAGCAAAATGAACTCTGAAAAGAAAAAAGCTTTGCATCTTTCAAAGGTTTTCGAGGAACAGGATAATGTTGACCGAGAAGAAATTGACGAGGTGGATCGAGCTCATCATACCACAGGGCATCTAGCTGGTATGAAAGTTCTTCATGGCCTTGATAAAGTGATTGAAGGTGGAGCAGTTGTTTTGACTCTGAAAGATCAGAACATCCTCGCCGACGGTGACATTAACAGTGAGGTTGATATGCTAATAAATGTGGAGATTGGGGAGCAGAAGCAGCGGGAAGAGGCTTACAAGCTTGCAAAAAAGACTGGGATATATGAGGACAAGTTTAATGATGAGCCAGGTGTGCAGAAGAGAATACTTCCGCAGTATGATGATCCAGTTGCAGATGAGGGGGTAACTTTGGATCACAGCGGACGTTTTACTGATGAAACAGAGAAGAAACTAGAAGAGCTCCGTAAAAGAATACAAGGTGTTCCAACAAGTAGCCAATTTGAAGATCTCAATTCATCAAAAAAGTTATCATCAGATTACTATAGCCATGAGGAAATGCTTCAATTTAAAAAGCCTAGGAAGAAAAAATCATTAAGAAAGAAAGATAAGCTCGACTTGGATGCTCTCGAAGCAGAAGCTATTTCTTCTGGGTTGGGTGTGGGGGATCTCGGCTCGAGGAATGATCCGAAGAGGCAAACTGCCAAGGAGGAAAAAGAAAGATCTGAGGCTCAAATGAGAAAAGATGCATACCAAACGGCTTATTTTAAAGCTGAAGAGGCATCTAAGGCCCTATGGGAAGAACCAACTTCAACCTTCAAAGTGGGTGAAGAAGAAAACCTCATTTTCGGAGATGATGAGGATCTCTATAAATCATTGGAAAAAGCTAGAAAACTTGCTTTGAAAAAACGGGATCAAACAGTGACATCTGGTCCACAGTTAGTTGCATCCGTAGCTATTGCTTCTATTGACCAATCGGCAGACACCGAAGCTAACCCCTCATCTGAAGAGATGCAAGAAAACAGGGTCGTCTTCACAGAAATGGAGGAGTTTGTTTGGGGTCTTCAGCTCGATGAAGAATCTCATAAACCGGAGACTGAAGATGTTTTTATGGAGGAAGACGAAATGGCGATATCCCCTGATCGTGAAAGGAAAAAAGAGATAGGTGGCTGGTCTGAAGTAAATGATGACAGTATGGCAGACAACCCAGTCAAGGATGAGAAAGATGAAATAGCACTAGATGAGACCATCCATGAAGTTGCAGTGGGGAAGGGGTTATCAGGCGCTCTGAAACTTCTAAAAGAGCGTGGAACACTTAAGGAGAGTATAGAATGGGGTGGGAGGAACATGGATAAGAAGAAGAGCAAACTTGTCGGCATTCATGAGAGTGACGGTTCGAAGGAAATACACATCGAGAGGCGGGATGAGTTCGGCAGGATTATGACCCCGAAGGAGGCTTTTCGGAATATATCTCATAAGTTTCATGGGAAGGGCCCAGGCAAAATGAAGCAAGAAAAACGTCAAAAGCAATACCAGGAAGAATTGAAGTTGAAACATATGAATAAATCTGATACCCCATCACAGTCTTTGGAGAGAATGAGGCAAACCCAAGAACGTTTGGGGACACCATATCTTGTTCTCAGCGGACATGTTAGGCCAGGGCAAGATTCTGATCCTCAAAGTGGTTTTGCTACAGTTGAGGACCTTCCTGGGGGATTAACACCCATGCTTGGTGATAGGAAGGTTGAGCATTTCTTGGGGATGAAACGGAAAGCTGAGCCCGGACTCATGCCCCCGCCAAAGAGTACGACTTCTATCTTCTCAACTCATTTTGTGGTTAACCGTCATGTAGAAACCCCGGAGTTTGCGCCTGAACCTATTGAAGTTTTACTCCAAGAGGTCGAGAGTTCCAATAGGAGTTTGATGGCCAAAACTCCAACCACTGTAACATTTAAACCCGATGACTTGGAAAAGGATTTTCATGATGAAACTGAAGAGTTGATATCTAGGGAACAAATAATTTTGATTACAACAATGAGATCGAACGACCGGGTTCAAGTTGAGTTTCTTCGGAGACTTGGGAACACATTGAAACTTGTTCCTCCACCCATTCTTTGGATTGTCGTAGAGACTTATTCGGAATCTACGGAGTTGTCAGAGATGTTGAGGAAAACTGGGATTATGTATAGGCATTTAGTTTACAGGGAGAATTTTACAGACGTGGGGGCTGAACTTGATCATCAGAGGAACTTCGCTCTTAATCACATTGAACATCATCGTCTTAATGGGATCGTCCACTTTGCAGATGTTTTCAACGTGTACGACCTTGCATTTTTGGATGAAATACGGGAAATCAAGGATTTTGGGACATGGCCAATGGCTTTGGTATCGGCAAATAGGAAGAGGGTTGTAATGGAAGGACCAGTTTGCGATTCATCTCAAATTATAGGATGGCATTTGAAAAATTTAAACGCTCAAACGAATGTAGGATCCTCGCTTCATATTTCCAGCTTTGCGTTTAATAGTTCAATCCTTTGGGACCCCGAACGATGGGGTCGTTCTTCTTCTATCCAAGATACCTCACAGAGTTCCATTAAAACCGTGCAACAAGTAATCGGGGAAGACGAGATGAAACTAAAGGGACTTCCTCAAGAAGAATGCTCCAAGATCATGCTGTGGAATCTCCATCTACCGACTGGGTTAAATCTAAATCGCTAA
Protein:  
MLHRCLLRLIVIFVFADYWNLFLMGKDYRKSRREEEDYVSSKDRERSKISDISNEKDKDDKDWRISSRDRREVLEEREKEKSKDKVREKDYDRYRDRDRERDRDHKDRGRDKEREKDREVEKEHHDRGRERKEKDRDREKERERPKDREREKHRDRERGKGKDKDWDKSERYQGKGKDREREMDIDDKERSVKPDQRDSSPEEHMQKVEHVPGEPQLSTSEIRQRMLKMKEERLKEASEASAWVNKSRKLESKMNSEKKKALHLSKVFEEQDNVDREEIDEVDRAHHTTGHLAGMKVLHGLDKVIEGGAVVLTLKDQNILADGDINSEVDMLINVEIGEQKQREEAYKLAKKTGIYEDKFNDEPGVQKRILPQYDDPVADEGVTLDHSGRFTDETEKKLEELRKRIQGVPTSSQFEDLNSSKKLSSDYYSHEEMLQFKKPRKKKSLRKKDKLDLDALEAEAISSGLGVGDLGSRNDPKRQTAKEEKERSEAQMRKDAYQTAYFKAEEASKALWEEPTSTFKVGEEENLIFGDDEDLYKSLEKARKLALKKRDQTVTSGPQLVASVAIASIDQSADTEANPSSEEMQENRVVFTEMEEFVWGLQLDEESHKPETEDVFMEEDEMAISPDRERKKEIGGWSEVNDDSMADNPVKDEKDEIALDETIHEVAVGKGLSGALKLLKERGTLKESIEWGGRNMDKKKSKLVGIHESDGSKEIHIERRDEFGRIMTPKEAFRNISHKFHGKGPGKMKQEKRQKQYQEELKLKHMNKSDTPSQSLERMRQTQERLGTPYLVLSGHVRPGQDSDPQSGFATVEDLPGGLTPMLGDRKVEHFLGMKRKAEPGLMPPPKSTTSIFSTHFVVNRHVETPEFAPEPIEVLLQEVESSNRSLMAKTPTTVTFKPDDLEKDFHDETEELISREQIILITTMRSNDRVQVEFLRRLGNTLKLVPPPILWIVVETYSESTELSEMLRKTGIMYRHLVYRENFTDVGAELDHQRNFALNHIEHHRLNGIVHFADVFNVYDLAFLDEIREIKDFGTWPMALVSANRKRVVMEGPVCDSSQIIGWHLKNLNAQTNVGSSLHISSFAFNSSILWDPERWGRSSSIQDTSQSSIKTVQQVIGEDEMKLKGLPQEECSKIMLWNLHLPTGLNLNR